CN209941792U - Prevent blockking up intelligent water diversion mouth combined system - Google Patents
Prevent blockking up intelligent water diversion mouth combined system Download PDFInfo
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- CN209941792U CN209941792U CN201920135111.1U CN201920135111U CN209941792U CN 209941792 U CN209941792 U CN 209941792U CN 201920135111 U CN201920135111 U CN 201920135111U CN 209941792 U CN209941792 U CN 209941792U
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- valve
- well
- diversion
- butterfly valve
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Abstract
The utility model discloses an anti-clogging intelligent water diversion port combined system, which comprises a water supply main pipe and a diversion pipeline, wherein the water supply main pipe is connected with a three-way valve through a pipeline water diversion port, the three-way valve is respectively connected with the diversion pipeline and the diversion elbow, the tail end of the diversion elbow is provided with a common butterfly valve well, the diversion pipeline is sequentially provided with a pressure reducing valve well, a flowmeter well, a butterfly valve and an exhaust valve well, the butterfly valve and the exhaust valve well are respectively connected with a first plant inlet pipeline water receiving point and a second plant inlet pipeline water receiving point, and the anti-clogging intelligent water diversion port combined system has a control function for anti-clogging under the condition that the requirements of enterprise users on water pressure and water quantity are met; when the water consumption of an enterprise is small, in order to ensure accurate metering, the front and rear gate valves of the water meter in the butterfly valve and the exhaust valve can be opened, and metering is carried out through the water meter; the data of the electromagnetic flowmeter is remotely transmitted to a central control room, so that real-time reading and water consumption information mastering are facilitated.
Description
Technical Field
The utility model relates to a water conservancy, municipal industry water supply and drainage field specifically are a prevent blockking up intelligent distributive notch combined system.
Background
The water supply system generally comprises a water supply source, a booster pump station, pipelines, valves and water diversion facilities along the way and at the tail end. In the large-scale industrial park far away from the city, the water supply is generally in a branch shape, and the requirement on each subsystem is higher for ensuring safe water supply.
In the large-scale industrial park water supply engineering, a branch pipe water diversion opening system on the way is used as a diversion facility of the whole water supply system, the stable and safe operation is very important, and once the branch pipe is blocked and broken, the operation of the whole water supply system is influenced. Causing significant losses to water consuming enterprises.
Therefore, the branch pipe water diversion port combined system is reasonably arranged, so that blockage is prevented, metering is convenient, safe operation of water supply facilities is facilitated, and normal operation of enterprise production is facilitated.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a prevent blockking up intelligent distributive opening combined system to solve the easy phenomenon of blockking up, breaking of taking place of the current water supply system who proposes in the above-mentioned background art, will prevent blockking up in the distributive opening pipeline that intelligent distributive opening combined system technique is applied to large-scale industrial park enterprise water, when reaching the improvement water supply assurance rate, can effectively reduce pipe valve spare and block up, ensure accurate measurement and master water information in real time, ensure the steady safe effective operation of water supply system.
In order to achieve the above object, the utility model provides a following technical scheme: an anti-blocking intelligent water diversion port combined system comprises a water supply main pipe and a diversion pipeline, wherein the water supply main pipe is connected with a three-way valve through a pipeline water diversion port, the three-way valve is respectively connected with the diversion pipeline and the diversion elbow, a common butterfly valve well is installed at the tail end of the diversion elbow, a pressure reduction valve well, a flowmeter well, a butterfly valve and an exhaust valve well are sequentially installed on the diversion pipeline, the butterfly valve and the exhaust valve well are respectively connected with a first plant inlet pipeline water receiving point and a second plant inlet pipeline water receiving point, an exhaust valve is arranged between the butterfly valve and the exhaust valve well and the first plant inlet pipeline water receiving point, and an exhaust valve is arranged between the butterfly valve and the exhaust valve well and the second plant inlet pipeline point;
the pressure reducing valve well consists of a manual butterfly valve, an expansion joint, a Y-shaped filter and a pressure reducing valve, wherein the expansion joint is arranged between the manual butterfly valve and the Y-shaped filter, and the pressure reducing valve is arranged on the other side of the Y-shaped filter;
the flow meter well consists of an electromagnetic flow meter and an expansion joint;
the butterfly valve and exhaust valve well consists of one telescopic joint and one manual butterfly valve;
the common butterfly valve well consists of one telescopic joint and one manual butterfly valve.
Further, the electromagnetic flowmeter is a bidirectional measurement system, and three integrators are arranged in the electromagnetic flowmeter: forward total, reverse total, and differential total.
Further, the electromagnetic flowmeter can display the forward flow quantity and the backward flow quantity, and has four output modes: current, pulse, digital communication, HART.
Further, the electromagnetic flowmeter comprises a converter inside, and the converter adopts Surface Mount Technology (SMT).
Furthermore, the specific form of the exhaust valve is a composite intake and exhaust valve.
Furthermore, a bypass is arranged inside the butterfly valve and the exhaust valve well, and the bypass comprises a gate valve, a soft joint, a filter, a water meter and the like.
Compared with the prior art, the beneficial effects of the utility model are that: the technical scheme of the anti-blocking intelligent water diversion port combined system has a control effect on anti-blocking under the condition that the requirements of enterprise users on water pressure and water quantity are met; when the water consumption of an enterprise is small, in order to ensure accurate metering, the front and rear gate valves of the water meter in the butterfly valve and the exhaust valve can be opened, and metering is carried out through the water meter; the data of the electromagnetic flowmeter is remotely transmitted to a central control room, so that real-time reading and water consumption information mastering are facilitated.
Drawings
Fig. 1 is a schematic plan view of the present invention;
fig. 2 is an enlarged view of the pressure relief valve well of the present invention;
fig. 3 is an enlarged view of the flow meter well of the present invention;
fig. 4 is an enlarged view of the butterfly valve + exhaust valve well of the present invention;
fig. 5 is an enlarged view of a conventional butterfly valve well of the present invention.
In the figure: 1. a water supply main pipe; 2. a water diversion port of the pipeline; 3. a three-way valve; 4. a diversion pipeline; 5. a relief valve well; 6. a flow meter well; 7. butterfly valve + exhaust valve well; 8. a first plant inlet pipeline water receiving point; 9. a second plant inlet pipeline water receiving point; 10. a diversion elbow; 11. a common butterfly valve well; 12. a manual butterfly valve; 13. an expansion joint; 14. A Y-type filter; 15. a pressure reducing valve; 16. an electromagnetic flow meter; 17. and (4) exhausting the valve.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides a technical solution: an anti-blocking intelligent water diversion port combined system comprises a water supply main pipe 1 and a diversion pipeline 4, wherein the water supply main pipe 1 is connected with a three-way valve 3 through a pipeline water diversion port 2, the three-way valve 3 is respectively connected with the diversion pipeline 4 and a diversion elbow 10, the tail end of the diversion elbow 10 is provided with a common butterfly valve well 11, the diversion pipeline 4 is sequentially provided with a pressure reduction valve well 5, a flow meter well 6, a butterfly valve and an exhaust valve well 7, the butterfly valve and the exhaust valve well 7 are respectively connected with a first plant inlet pipeline water receiving point 8 and a second plant inlet pipeline water receiving point 9, an exhaust valve 17 is arranged between the butterfly valve and the exhaust valve well 7 and the first plant inlet pipeline water receiving point 8, and an exhaust valve 17 is arranged between the butterfly valve and the exhaust valve well 7 and the second plant inlet pipeline water receiving point 9;
the pressure reducing valve well 5 consists of a manual butterfly valve 12, an expansion joint 13, a Y-shaped filter 14 and a pressure reducing valve 15, wherein the expansion joint 13 is arranged between the manual butterfly valve 12 and the Y-shaped filter 14, and the pressure reducing valve 15 is arranged on the other side of the Y-shaped filter 14;
the flowmeter well 6 consists of an electromagnetic flowmeter 16 and the telescopic joint 13;
the butterfly valve + exhaust valve well 7 consists of one telescopic joint 13 and one manual butterfly valve 12;
the common butterfly valve well 11 is composed of one telescopic joint 13 and one manual butterfly valve 12.
In this embodiment, the electromagnetic flow meter 16 is a bidirectional measurement system, and three integrators are installed in the electromagnetic flow meter 16: the forward total, reverse total and differential total are arranged to facilitate the detection of water flow through the electromagnetic flowmeter 16.
In this embodiment, the electromagnetic flow meter 16 can display the forward and backward flow amounts, and the electromagnetic flow meter 16 has four output modes: current, pulse, digital communication, HART.
In this embodiment, the electromagnetic flow meter 16 includes a transducer therein, and the transducer is Surface Mount Technology (SMT), so that the electromagnetic flow meter 16 has self-test and self-diagnostic functions.
In this embodiment, the specific form of the exhaust valve 17 is a composite intake and exhaust valve 17, so that when water is injected into the pipe, the plug head in the valve stays at the opening position to exhaust a large amount of air, when the air is exhausted, water is accumulated in the valve, the floating ball is floated, the plug head is driven to the closing position to stop a large amount of air, when the water in the pipe is normally conveyed, if a small amount of air is gathered in the valve to a certain degree, the water level in the valve drops, the floating ball drops along with the water, at the moment, the air is exhausted from the small hole, when the water in the pipe is empty or meets negative pressure generated in the pipe when the water pump stops, the plug head is rapidly opened at the moment to suck the air, and the normal.
In this embodiment, butterfly valve + discharge valve well 7 is inside to be provided with the bypass, and the bypass comprises gate valve, soft joint, filter, water gauge, sets up like this and can make the enterprise water consumption less, guarantees the accurate measurement water yield.
The working principle is as follows: the water in the main water supply pipe 1 is divided by the pipeline water dividing port 2 and guided to the three-way valve 3, the water divided by the three-way valve 3 is respectively injected into the guide pipeline 4 and the well of the common butterfly valve 7, the water flowing through the diversion pipeline 4 is sequentially treated by a pressure reducing valve well 5, a flow meter well 6, a butterfly valve and an exhaust valve well 7, in the butterfly valve and the exhaust valve well 7, when water begins to be injected into the pipe, the plug head in the valve stays at the opening position to perform a large amount of exhaust, when the air is exhausted, the water is accumulated in the valve, the floating ball is floated, the plug head is driven to the closing position, the large amount of air exhaust is stopped, when water in the pipe is normally conveyed, if a small amount of air is gathered in the valve to a certain degree, the water level in the valve is reduced, the floating ball is reduced, at the same time, the air is discharged from the small hole, when the water pump stops and water in the pipe is empty or negative pressure is generated in the pipe, the plug head is quickly opened to suck air, so that the normal fluid conveying of the pipeline is ensured.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (6)
1. The utility model provides a prevent blockking up intelligence water diversion mouth combined system which characterized in that: comprises a water supply main pipe (1) and a diversion pipeline (4), wherein the water supply main pipe (1) is connected with a three-way valve (3) through a pipeline water diversion port (2), the three-way valve (3) is respectively connected with the diversion pipeline (4) and the diversion elbow (10), the tail end of the diversion elbow (10) is provided with a common butterfly valve well (11), the diversion pipeline (4) is sequentially provided with a pressure reducing valve well (5), a flowmeter well (6), a butterfly valve and an exhaust valve well (7), the butterfly valve and the exhaust valve well (7) are respectively connected with a first plant inlet pipeline water receiving point (8) and a second plant inlet pipeline water receiving point (9), an exhaust valve (17) is arranged between the butterfly valve and the exhaust valve well (7) and the first plant inlet pipeline water receiving point (8), an exhaust valve (17) is arranged between the butterfly valve and the exhaust valve well (7) and the second plant inlet pipeline water receiving point (9);
the pressure reducing valve well (5) consists of a manual butterfly valve (12), an expansion joint (13), a Y-shaped filter (14) and a pressure reducing valve (15), the expansion joint (13) is arranged between the manual butterfly valve (12) and the Y-shaped filter (14), and the pressure reducing valve (15) is arranged on the other side of the Y-shaped filter (14);
the flow meter well (6) consists of an electromagnetic flow meter (16) and the telescopic joint (13);
the butterfly valve + exhaust valve well (7) consists of one telescopic joint (13) and one manual butterfly valve (12);
the common butterfly valve well (11) is composed of one telescopic joint (13) and one manual butterfly valve (12).
2. The intelligent anti-clogging water diversion port combination system according to claim 1, wherein: the electromagnetic flowmeter (16) is a two-way measuring system, three integrators are arranged in the electromagnetic flowmeter (16): forward total, reverse total, and differential total.
3. The intelligent anti-clogging water diversion port combination system according to claim 1, wherein: the electromagnetic flowmeter (16) can display the forward flow quantity and the backward flow quantity, and the electromagnetic flowmeter (16) has four output modes: current, pulse, digital communication, HART.
4. The intelligent anti-clogging water diversion port combination system according to claim 1, wherein: the electromagnetic flow meter (16) includes a transducer therein, the transducer being Surface Mount Technology (SMT) configured to provide the electromagnetic flow meter (16) with self-test and self-diagnostic capabilities.
5. The intelligent anti-clogging water diversion port combination system according to claim 1, wherein: the specific form of the exhaust valve (17) is a composite air inlet and exhaust valve (17).
6. The intelligent anti-clogging water diversion port combination system according to claim 1, wherein: a bypass is arranged inside the butterfly valve and the exhaust valve well (7), and the bypass consists of a gate valve, a soft joint, a filter and a water meter.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920135111.1U CN209941792U (en) | 2019-01-26 | 2019-01-26 | Prevent blockking up intelligent water diversion mouth combined system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920135111.1U CN209941792U (en) | 2019-01-26 | 2019-01-26 | Prevent blockking up intelligent water diversion mouth combined system |
Publications (1)
Publication Number | Publication Date |
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CN209941792U true CN209941792U (en) | 2020-01-14 |
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Family Applications (1)
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CN201920135111.1U Expired - Fee Related CN209941792U (en) | 2019-01-26 | 2019-01-26 | Prevent blockking up intelligent water diversion mouth combined system |
Country Status (1)
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CN (1) | CN209941792U (en) |
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2019
- 2019-01-26 CN CN201920135111.1U patent/CN209941792U/en not_active Expired - Fee Related
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20200114 Termination date: 20210126 |
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CF01 | Termination of patent right due to non-payment of annual fee |